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350 lines
7.8 KiB
350 lines
7.8 KiB
/********************************************************************/
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/** Copyright(c) 1989 Microsoft Corporation. **/
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/********************************************************************/
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//***
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//
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// Filename: finder.c
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//
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// Description: This module contains support routines for the finder
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// category API's for the AFP server service
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//
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// History:
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// Sept 30,1993. NarenG Created original version.
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//
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#include "afpsvcp.h"
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BOOL
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IsTargetNTFS(
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IN LPWSTR lpwsPath
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);
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DWORD
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CopyStream(
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IN HANDLE hSrc,
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IN HANDLE hDst
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);
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#define AFP_RESC_STREAM TEXT(":AFP_Resource")
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//**
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//
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// Call: AfpAdminrFinderSetInfo
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//
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// Returns: NO_ERROR
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// ERROR_ACCESS_DENIED
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// non-zero returns from AfpServerIOCtrl
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//
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// Description: This routine communicates with the AFP FSD to implement
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// the AfpAdminFinderSetInfo function.
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//
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DWORD
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AfpAdminrFinderSetInfo(
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IN AFP_SERVER_HANDLE hServer,
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IN LPWSTR pType,
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IN LPWSTR pCreator,
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IN LPWSTR pData,
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IN LPWSTR pResource,
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IN LPWSTR pTarget,
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IN DWORD dwParmNum
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)
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{
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AFP_REQUEST_PACKET AfpSrp;
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DWORD dwRetCode = NO_ERROR, dwRetryCount = 0;
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AFP_FINDER_INFO AfpFinderInfo;
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LPBYTE pAfpFinderInfoSR = NULL;
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DWORD cbAfpFinderInfoSRSize;
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DWORD dwAccessStatus=0;
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HANDLE hTarget = INVALID_HANDLE_VALUE;
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HANDLE hDataSrc = INVALID_HANDLE_VALUE;
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HANDLE hResourceSrc = INVALID_HANDLE_VALUE;
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LPWSTR lpwsResourceFork;
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BOOLEAN fCreatedFile = FALSE;
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// Check if caller has access
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//
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if ( dwRetCode = AfpSecObjAccessCheck( AFPSVC_ALL_ACCESS, &dwAccessStatus))
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{
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AFP_PRINT(( "SFMSVC: AfpAdminrFinderSetInfo, AfpSecObjAccessCheck failed %ld\n",dwRetCode));
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AfpLogEvent( AFPLOG_CANT_CHECK_ACCESS, 0, NULL,
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dwRetCode, EVENTLOG_ERROR_TYPE );
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return( ERROR_ACCESS_DENIED );
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}
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if ( dwAccessStatus )
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{
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AFP_PRINT(( "SFMSVC: AfpAdminrFinderSetInfo, AfpSecObjAccessCheck returned %ld\n",dwAccessStatus));
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return( ERROR_ACCESS_DENIED );
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}
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if ( wcsstr( pTarget, (LPWSTR)TEXT(":\\") ) == NULL )
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return( ERROR_INVALID_NAME );
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if ( !IsTargetNTFS( pTarget ) )
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return( (DWORD)AFPERR_UnsupportedFS );
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//
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// Impersonate the client while we read/write the fork data
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//
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dwRetCode = RpcImpersonateClient( NULL );
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if ( dwRetCode != RPC_S_OK )
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{
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return(I_RpcMapWin32Status( dwRetCode ));
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}
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// open the data source file if one was specified
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//
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if ( STRLEN( pData ) > 0 ){
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hDataSrc = CreateFile(pData, GENERIC_READ, FILE_SHARE_READ, NULL,
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OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
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if (hDataSrc == INVALID_HANDLE_VALUE) {
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RpcRevertToSelf();
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return( GetLastError() );
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}
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// open the target file's data stream if the file exists,
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// otherwise create the file
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//
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hTarget = CreateFile(pTarget, GENERIC_WRITE, FILE_SHARE_READ, NULL,
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OPEN_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL);
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if (hTarget == INVALID_HANDLE_VALUE) {
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dwRetCode = GetLastError();
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CloseHandle(hDataSrc);
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RpcRevertToSelf();
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return( dwRetCode );
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}
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// Figure out if we just created a new file
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if (GetLastError() == 0)
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{
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fCreatedFile = TRUE;
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}
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SetFilePointer(hTarget,0,NULL,FILE_BEGIN);
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SetEndOfFile(hTarget);
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// Read the source data and write it to target data stream
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//
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SetLastError(NO_ERROR);
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dwRetCode = CopyStream(hDataSrc, hTarget);
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CloseHandle(hDataSrc);
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CloseHandle(hTarget);
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if (dwRetCode != NO_ERROR) {
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RpcRevertToSelf();
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return( dwRetCode );
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}
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}
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// open the resource source file if one was specified
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//
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if ( STRLEN( pResource ) > 0 ) {
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hResourceSrc = CreateFile( pResource, GENERIC_READ, FILE_SHARE_READ,
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NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL,
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NULL);
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if (hResourceSrc == INVALID_HANDLE_VALUE) {
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RpcRevertToSelf();
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return( GetLastError() );
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}
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lpwsResourceFork = LocalAlloc( LPTR,
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(STRLEN(pTarget)+
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STRLEN(AFP_RESC_STREAM)+1)
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* sizeof( WCHAR ) );
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if ( lpwsResourceFork == NULL ) {
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CloseHandle(hResourceSrc);
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RpcRevertToSelf();
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return( ERROR_NOT_ENOUGH_MEMORY );
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}
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// Open the target resource fork
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//
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STRCPY(lpwsResourceFork, pTarget );
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STRCAT(lpwsResourceFork, AFP_RESC_STREAM);
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hTarget = CreateFile(lpwsResourceFork, GENERIC_WRITE, FILE_SHARE_READ,
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NULL, CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL);
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if (hTarget == INVALID_HANDLE_VALUE) {
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dwRetCode = GetLastError();
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LocalFree( lpwsResourceFork );
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CloseHandle(hResourceSrc);
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RpcRevertToSelf();
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return( dwRetCode );
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}
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LocalFree( lpwsResourceFork );
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// Assume we created a new file (datafork) in the process, there is
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// no way to tell for sure since creating a new resource fork will
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// not tell us whether or not the datafork already existed or not
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fCreatedFile = TRUE;
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// Read the source resource and write it to target resource stream
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//
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SetLastError(NO_ERROR);
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dwRetCode = CopyStream(hResourceSrc, hTarget);
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CloseHandle(hResourceSrc);
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CloseHandle(hTarget);
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if (dwRetCode != NO_ERROR) {
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RpcRevertToSelf();
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return( dwRetCode );
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}
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}
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//
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// Revert back to LocalSystem context
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//
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RpcRevertToSelf();
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if ( dwParmNum & ( AFP_FD_PARMNUM_TYPE | AFP_FD_PARMNUM_CREATOR ) ){
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dwRetCode = NO_ERROR;
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AfpFinderInfo.afpfd_path = pTarget;
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if ( dwParmNum & AFP_FD_PARMNUM_TYPE )
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STRCPY( AfpFinderInfo.afpfd_type, pType );
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else
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AfpFinderInfo.afpfd_type[0] = TEXT( '\0' );
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if ( dwParmNum & AFP_FD_PARMNUM_CREATOR )
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STRCPY( AfpFinderInfo.afpfd_creator, pCreator );
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else
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AfpFinderInfo.afpfd_creator[0] = TEXT( '\0' );
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// Make this buffer self-relative.
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//
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if ( dwRetCode = AfpBufMakeFSDRequest((LPBYTE)&AfpFinderInfo,
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sizeof(SETINFOREQPKT),
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AFP_FINDER_STRUCT,
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&pAfpFinderInfoSR,
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&cbAfpFinderInfoSRSize ))
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return( dwRetCode );
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// Make IOCTL to set info
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//
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AfpSrp.dwRequestCode = OP_FINDER_SET;
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AfpSrp.dwApiType = AFP_API_TYPE_SETINFO;
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AfpSrp.Type.SetInfo.pInputBuf = pAfpFinderInfoSR;
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AfpSrp.Type.SetInfo.cbInputBufSize = cbAfpFinderInfoSRSize;
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AfpSrp.Type.SetInfo.dwParmNum = dwParmNum;
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// Since there will be a delay between the time the change
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// notify comes into the server for the new file, and the
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// time it is actually processed by the server, we need to
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// put in a delay and retry to give the server a chance to
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// cache the new file
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if (fCreatedFile)
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{
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Sleep( 2000 );
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}
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do
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{
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dwRetCode = AfpServerIOCtrl( &AfpSrp );
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if (dwRetCode != ERROR_PATH_NOT_FOUND)
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{
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break;
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}
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Sleep( 2000);
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} while ( ++dwRetryCount < 4 );
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LocalFree( pAfpFinderInfoSR );
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}
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return( dwRetCode );
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}
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DWORD
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CopyStream(
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IN HANDLE hSrc,
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IN HANDLE hDst
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)
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{
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DWORD bytesread, byteswritten, Status = NO_ERROR;
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BYTE Buffer[1024 * 16];
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do
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{
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bytesread = byteswritten = 0;
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// read from src, write to dst
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//
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if (ReadFile(hSrc, Buffer, sizeof(Buffer), &bytesread, NULL))
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{
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if (bytesread == 0)
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{
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break;
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}
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}
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else
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{
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Status = GetLastError();
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break;
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}
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if (!WriteFile(hDst, Buffer, bytesread, &byteswritten, NULL))
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{
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Status = GetLastError();
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break;
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}
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} while (TRUE);
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return(Status);
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}
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BOOL
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IsTargetNTFS(
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IN LPWSTR lpwsPath
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)
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{
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WCHAR wchDrive[5];
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DWORD dwMaxCompSize;
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DWORD dwFlags;
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WCHAR wchFileSystem[10];
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// Get the drive letter, : and backslash
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//
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ZeroMemory( wchDrive, sizeof( wchDrive ) );
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STRNCPY( wchDrive, lpwsPath, 3 );
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if ( !( GetVolumeInformation( (LPWSTR)wchDrive,
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NULL,
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0,
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NULL,
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&dwMaxCompSize,
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&dwFlags,
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(LPWSTR)wchFileSystem,
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sizeof( wchFileSystem ) ) ) ){
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return( FALSE );
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}
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if ( STRICMP( wchFileSystem, TEXT("NTFS") ) == 0 )
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return( TRUE );
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else
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return( FALSE );
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}
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